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The NASA-Lewis program on fusion energy for space power and propulsion, 1958-1978

机译:1958-1978年,美国宇航局-刘易斯关于聚变能用于空间动力和推进的计划

摘要

An historical synopsis is provided of the NASA-Lewis research program on fusion energy for space power and propulsion systems. It was initiated to explore the potential applications of fusion energy to space power and propulsion systems. Some fusion related accomplishments and program areas covered include: basic research on the Electric Field Bumpy Torus (EFBT) magnetoelectric fusion containment concept, including identification of its radial transport mechanism and confinement time scaling; operation of the Pilot Rig mirror machine, the first superconducting magnet facility to be used in plasma physics or fusion research; operation of the Superconducting Bumpy Torus magnet facility, first used to generate a toroidal magnetic field; steady state production of neutrons from DD reactions; studies of the direct conversion of plasma enthalpy to thrust by a direct fusion rocket via propellant addition and magnetic nozzles; power and propulsion system studies, including D(3)He power balance, neutron shielding, and refrigeration requirements; and development of large volume, high field superconducting and cryogenic magnet technology.
机译:NASA-Lewis研究计划提供了有关太空能源和推进系统聚变能的历史概要。开始研究聚变能在空间动力和推进系统中的潜在应用。涉及融合的一些成就和计划领域包括:对电场颠簸环(EFBT)磁电融合遏制概念的基础研究,包括确定其径向传输机制和限制时间缩放; Pilot Rig镜机的运行,这是第一台用于等离子体物理或聚变研究的超导磁体。超导凹凸磁环磁体设备的运行,首先用于产生环形磁场; DD反应稳定产生中子;研究了直接聚变火箭通过添加推进剂和磁性喷嘴将等离子体焓直接转化为推力的研究;电力和推进系统研究,包括D(3)He功率平衡,中子屏蔽和制冷要求;和大容量,高场超导低温磁体技术的发展。

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